Mathis P, Sauer K
Department of Chemistry and Laboratory of Chemical Biodynamics, Lawrence Berkeley Laboratory, University of California, Berkeley, California 94720.
Plant Physiol. 1973 Jan;51(1):115-9. doi: 10.1104/pp.51.1.115.
In the evolution of the absorption spectrum of etiolated bean leaves (Phaseolus vulgaris L.) following illumination, a rapid photoconversion of 50% or more of the active protochlorophyllide at room temperature is followed by a shift of the chlorophyll(ide) absorption maximum: C(678)--> -->C(684)-->C(672 nm). Kinetic studies at 2 C and the absence of an isosbestic point provide evidence for an intermediate between C(678) and C(684). A dramatically different evolution is observed following the photoconversion of only 5 to 30% of the active protochlorophyllide at room temperature. C(672) appears within 30 seconds, and no subsequent dark shift occurs during the following 90 minutes. At 0 C, conversion of 5% of the active protochlorophyllide produces a new species, C(676), which converts progressively to C(672) within 10 minutes. We interpret the results in terms of two photochemical steps operating in series for the complete conversion of active protochlorophyllide. Furthermore, there appears to be competition between an irreversible, terminal dark shift and the second light reaction. We propose a scheme based on dimers of protochlorophyllide reduced stepwise to dimers of chlorophyllide in two successive light reactions. The intermediate mixed protochlorophyllide-chlorophyllide dimer absorbs at 676 nm and displays a much faster dissociation to monomers than does the chlorophyllide-chlorophyllide dimer.
在黄化菜豆叶片(菜豆)光照后的吸收光谱演变过程中,室温下50%或更多的活性原叶绿素酸酯快速发生光转化,随后叶绿素(酸酯)吸收峰出现位移:C(678)--> -->C(684)-->C(672 nm)。在2℃下的动力学研究以及不存在等吸收点的情况为C(678)和C(684)之间的一种中间体提供了证据。在室温下仅5%至30%的活性原叶绿素酸酯发生光转化后,观察到一种截然不同的演变情况。C(672)在30秒内出现,并且在随后的90分钟内没有发生后续的暗位移。在0℃时,5%的活性原叶绿素酸酯转化产生一种新物种C(676),其在10分钟内逐渐转化为C(672)。我们根据两个串联运行的光化学步骤来解释这些结果,这两个步骤负责活性原叶绿素酸酯的完全转化。此外,在不可逆的终末暗位移和第二个光反应之间似乎存在竞争。我们提出了一个基于原叶绿素酸酯二聚体的方案,该二聚体在两个连续的光反应中逐步还原为叶绿素酸酯二聚体。中间的混合原叶绿素酸酯 - 叶绿素酸酯二聚体在676 nm处吸收,并且与叶绿素酸酯 - 叶绿素酸酯二聚体相比,其解离为单体的速度要快得多。